Carrera-Gutiérrez, K.; Venegas-Contreras, E.; Márquez-Torres, M.; Ruiz-Esparza-RodrÃguez, M.A.; Esqueda-Barrón, Y.; Gomez-Batres, R.; Leal-Berumen, I.; DÃaz de León, J.N.; Gervacio-Arciniega, J.J.; Herrera-Pérez, G.;
et al. Hexagonal-to-Monoclinic Phase-Modulated HAp Nanofibers for Enhanced Piezoelectric and Biocompatible Performance. Biomolecules 2026, 16, 385.
https://doi.org/10.3390/biom16030385
AMA Style
Carrera-Gutiérrez K, Venegas-Contreras E, Márquez-Torres M, Ruiz-Esparza-RodrÃguez MA, Esqueda-Barrón Y, Gomez-Batres R, Leal-Berumen I, DÃaz de León JN, Gervacio-Arciniega JJ, Herrera-Pérez G,
et al. Hexagonal-to-Monoclinic Phase-Modulated HAp Nanofibers for Enhanced Piezoelectric and Biocompatible Performance. Biomolecules. 2026; 16(3):385.
https://doi.org/10.3390/biom16030385
Chicago/Turabian Style
Carrera-Gutiérrez, Karime, Estefania Venegas-Contreras, Miguel Márquez-Torres, Marco Antonio Ruiz-Esparza-RodrÃguez, Yasmin Esqueda-Barrón, Roberto Gomez-Batres, Irene Leal-Berumen, Jorge Noé DÃaz de León, Juan José Gervacio-Arciniega, Guillermo Herrera-Pérez,
and et al. 2026. "Hexagonal-to-Monoclinic Phase-Modulated HAp Nanofibers for Enhanced Piezoelectric and Biocompatible Performance" Biomolecules 16, no. 3: 385.
https://doi.org/10.3390/biom16030385
APA Style
Carrera-Gutiérrez, K., Venegas-Contreras, E., Márquez-Torres, M., Ruiz-Esparza-RodrÃguez, M. A., Esqueda-Barrón, Y., Gomez-Batres, R., Leal-Berumen, I., DÃaz de León, J. N., Gervacio-Arciniega, J. J., Herrera-Pérez, G., Orozco-Carmona, V. M., & Rojas-George, G.
(2026). Hexagonal-to-Monoclinic Phase-Modulated HAp Nanofibers for Enhanced Piezoelectric and Biocompatible Performance. Biomolecules, 16(3), 385.
https://doi.org/10.3390/biom16030385